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CN105846335A - A 12kV current-carrying 1250A solid insulated switchgear - Google Patents

A 12kV current-carrying 1250A solid insulated switchgear Download PDF

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Publication number
CN105846335A
CN105846335A CN201610308985.3A CN201610308985A CN105846335A CN 105846335 A CN105846335 A CN 105846335A CN 201610308985 A CN201610308985 A CN 201610308985A CN 105846335 A CN105846335 A CN 105846335A
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China
Prior art keywords
isolation
switch
insulation
contact
current
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CN201610308985.3A
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CN105846335B (en
Inventor
张增起
曾锦河
龙捷峰
刁庆宪
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Guangdong Purlux Electric Co ltd
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Guangdong Purlux Electric Co ltd
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B13/00Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle
    • H02B13/005Electrical connection between switchgear cells
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B13/00Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle
    • H02B13/01Arrangement of switchgear in which switches are enclosed in, or structurally associated with, a casing, e.g. cubicle with resin casing
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/015Boards, panels, desks; Parts thereof or accessories therefor
    • H02B1/04Mounting thereon of switches or of other devices in general, the switch or device having, or being without, casing
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02BBOARDS, SUBSTATIONS OR SWITCHING ARRANGEMENTS FOR THE SUPPLY OR DISTRIBUTION OF ELECTRIC POWER
    • H02B1/00Frameworks, boards, panels, desks, casings; Details of substations or switching arrangements
    • H02B1/20Bus-bar or other wiring layouts, e.g. in cubicles, in switchyards

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • High-Tension Arc-Extinguishing Switches Without Spraying Means (AREA)

Abstract

The invention discloses a 12kV current-carrying 1250A solid insulation switch cabinet which comprises a box body, wherein an insulation square tube is arranged in the middle of the box body, and a vacuum switch, an isolating switch and a grounding switch are respectively arranged in the insulation square tube. The spring energy storage operating mechanism and the locking mechanism are arranged on one side of the insulating square barrel and are respectively in driving connection with the vacuum switch, the isolating switch and the grounding switch. The invention adopts a through cluster bus structure, can ensure enough conductive cross section no matter the front end and the rear end of an incoming and outgoing line system are connected, adopts a watchband contact finger technology, uniformly distributes contacts, reduces the length of a conductor, reduces the resistance of an integral loop, avoids the problem of uneven conduction in large-current electric contact, and solves the problems of untimely compression joint caused by the thermal deformation of the conductor and heating malignant deformation further caused by the untimely compression joint. So that the rated current grade of the 12kV solid insulation switch cabinet reaches 1250A.

Description

一种12kV载流1250A固体绝缘开关柜A 12kV current-carrying 1250A solid insulated switchgear

技术领域 technical field

本发明涉及输配电开关柜领域,具体涉及一种12kV载流1250A固体绝缘开关柜。 The invention relates to the field of power transmission and distribution switch cabinets, in particular to a 12kV current-carrying 1250A solid insulation switch cabinet.

背景技术 Background technique

固体绝缘环网柜是一种集绝缘母线、组合单元小型化、外固封三种技术一体,开关及高压带电部件采用环氧树脂等固体绝缘材料进行整体密闭包封,以固体绝缘材料作为带电体对地及相间主绝缘,并将其外表面的导电或半导电屏蔽层可靠接地的一种新型配电设备,国家电网和南方电网普遍采用。 The solid insulated ring network cabinet is a combination of three technologies: insulated busbar, combined unit miniaturization, and external solid sealing. The switch and high-voltage live parts are sealed and encapsulated with solid insulating materials such as epoxy resin. It is a new type of power distribution equipment that is mainly insulated from body to ground and phase to phase, and the conductive or semi-conductive shielding layer on its outer surface is reliably grounded. It is generally used by the State Grid and China Southern Power Grid.

随着近些年国内固体绝缘柜大量普及应用,部分替代了价格昂贵的进口固体绝缘柜,为振兴名族工业,实现“中国梦”立下了不可磨灭的功劳。但目前国内固体绝缘柜存在的问题也不应该忽视。纵观国内固体绝缘柜生产情况,除固体绝缘箱体结构有整体式和A、B、C分相式两大类型之外,各设计厂家内部元件布置均有差异,固体绝缘柜质量良莠不齐。比如:大多数设计厂家限于没有技术力量、国产专业软件,主绝缘模块没有进行应力、电场、局部放电、电场屏蔽等仿真研究,靠经验设计;再如:主绝缘模块中的真空灭弧室大多是竖直布置,操作机构置于主绝缘模块上部;主绝缘模块上采用的母线连接方式为外锥形连接。由于操作机构置于主绝缘模块的上部,且固体绝缘环网柜还要保证650mm以上的电缆连接高度,导致固体绝缘环网柜的操作高度过高;尺寸也较大。 With the popularization and application of domestic solid insulation cabinets in recent years, some of them have replaced expensive imported solid insulation cabinets, and have made indelible contributions to the revitalization of famous industries and the realization of the "Chinese Dream". However, the problems existing in domestic solid insulation cabinets should not be ignored. Throughout the production situation of domestic solid insulation cabinets, in addition to the two types of solid insulation cabinet structures: integral type and A, B, and C phase separation types, the internal component layout of each design manufacturer is different, and the quality of solid insulation cabinets varies. For example: Most design manufacturers are limited to no technical force, domestic professional software, and the main insulation module has not carried out simulation research on stress, electric field, partial discharge, electric field shielding, etc., and rely on experience to design; another example: most of the vacuum interrupters in the main insulation module It is arranged vertically, and the operating mechanism is placed on the upper part of the main insulation module; the busbar connection method used on the main insulation module is an external tapered connection. Since the operating mechanism is placed on the upper part of the main insulation module, and the solid insulation ring network cabinet must ensure a cable connection height of more than 650mm, the operating height of the solid insulation ring network cabinet is too high; the size is also large.

现有设计存在以下弊端: The existing design has the following disadvantages:

1、目前,几乎国内固体绝缘柜电缆进出线均采用稍柱形电缆进出线绝缘终端头结构,只能通过630A额定电流,固体绝缘柜使用范围受到限制。固体绝缘柜电缆进出线是通过稍柱形接线桩电缆头铜螺栓相连实现电流导通。而M16螺栓的导电有效截面积是154mm2,通过额定电流630A没有问题,但遇到分支引出线串联2路连接,额定电流1250A情况下,目前的电缆头和联络母线连接结构发热量至少增高50%。冷变形问题:由于电缆重力产生电缆下坠,在电缆下坠的作用下,接线桩这个部位会产生冷变形问题,联络螺栓与接线端子上端部会产生分离,螺纹也相对变形,造成螺纹接触压力失衡。由于螺纹上部的接触压力变小;下部发生挤压,接触面积减小,导致接触电阻增大,特别是一旦这些间隙受到凝露的影响,就会发生锈蚀氧化,氧化物会进一步加速这种恶性循环,以致锈蚀严重到不能够承受正常额定电流。热变形问题,电缆终端和接线桩连接部位由于运行状态下电流的影响而发热,金属件膨胀,当负荷量减小,金属件温度降低,冷热膨胀收缩,每天如此,使得金属件疲劳,产生永久性变形,整体接触部位松弛,造成接触电阻增大而刺激产生发热量增大。改进大电流电缆进出线绝缘终端头的结构应该是重要的必须的。 1. At present, almost all domestic solid insulation cabinets use a slightly cylindrical cable insulation terminal structure for the cable entry and exit lines, which can only pass a rated current of 630A, and the scope of use of the solid insulation cabinet is limited. The incoming and outgoing cables of the solid insulation cabinet are connected by copper bolts at the cable heads of slightly cylindrical terminals to realize current conduction. The conductive effective cross-sectional area of the M16 bolt is 154mm 2 , and there is no problem passing the rated current of 630A. However, when the branch leads are connected in series and the rated current is 1250A, the heat generated by the current connection structure of the cable head and the bus bar will increase by at least 50 %. Cold deformation problem: Due to the gravity of the cable, the cable will drop. Under the action of the cable drop, the part of the terminal post will have a cold deformation problem. The contact bolt will be separated from the upper end of the terminal, and the thread will be relatively deformed, resulting in an unbalanced thread contact pressure. As the contact pressure on the upper part of the thread becomes smaller; the lower part is squeezed and the contact area is reduced, resulting in an increase in contact resistance, especially once these gaps are affected by condensation, rust and oxidation will occur, and the oxide will further accelerate this malignant process. cycle, so that the corrosion is so severe that it cannot withstand the normal rated current. Thermal deformation problem, the connecting part of the cable terminal and the terminal pile is heated due to the influence of the current in the running state, and the metal parts expand. When the load decreases, the temperature of the metal parts decreases, and the cold and heat expand and contract. Permanent deformation, relaxation of the overall contact part, resulting in increased contact resistance and increased heat generated by stimulation. It should be important and necessary to improve the structure of the insulation terminal head of the incoming and outgoing wires of high-current cables.

2、导电件造型棱角过多且没有有效措施改变电场集中的缺陷,致使绝缘件寿命降低,一般在三年左右时间绝缘材料受电场影响,产生明显放电现象。部分关键部位变形老化,以致产生接地故障及相间短路故障。因此,固体绝缘件外部不带导电或半导电屏蔽层时,存在 感应电流人手不能触摸的安全隐患;而固体绝缘件外部附涂导电或半导电屏蔽层接地后,局部放电指标又超出行业标准要求。 2. There are too many edges and corners in the shape of the conductive parts and there are no effective measures to change the defects of the concentration of the electric field, resulting in a reduction in the life of the insulating parts. Generally, the insulating material is affected by the electric field in about three years, resulting in obvious discharge phenomena. Some key parts are deformed and aged, resulting in ground faults and phase-to-phase short-circuit faults. Therefore, when there is no conductive or semi-conductive shielding layer on the outside of the solid insulator, there is a safety hazard that the induced current cannot be touched by human hands; and when the solid insulator is grounded with a conductive or semi-conductive shielding layer on the outside, the partial discharge index exceeds the industry standard requirements. .

3、隔离开关刀片形结构,局部放电问题无法解决,刀片插入到静触头内,由于受力大,无法完全插入,接触不完全,动热稳定性差。原结构空气绝缘间隙过小,绝缘爬距过小,而且无改进空间。致使设备无法在高海拔条件下正常运行。 3. With the blade-shaped structure of the isolating switch, the problem of partial discharge cannot be solved. The blade is inserted into the static contact. Due to the large force, it cannot be fully inserted, the contact is incomplete, and the dynamic and thermal stability is poor. The air insulation gap of the original structure is too small, the insulation creepage distance is too small, and there is no room for improvement. prevent the device from functioning properly at high altitudes.

4、部分传统固体绝缘柜真空灭弧室与联络母线相隔距离不够,燃弧期间触头间的纵向磁场被联络母线磁场吸引,而非形成均匀旋转磁场,容易烧溶铜铬合金触头。 4. The distance between the vacuum interrupter of some traditional solid insulated cabinets and the connecting busbar is not enough. During the arcing period, the longitudinal magnetic field between the contacts is attracted by the magnetic field of the connecting busbar instead of forming a uniform rotating magnetic field, which is easy to melt the copper-chromium alloy contacts.

5、有些固体柜设计的隔离开关动、静触头大多安装在一个绝缘体上,中间有没有接地隔绝,有泄漏电流通过,存在假断口问题。开关柜使用几年后,因为放电、附着颗粒物等绝缘水平逐年下降,最终导致设备绝缘故障。因此,GB1985-2003《高压隔离开关和接地开关》中明确规定:隔离断口间不应该有危险的漏电流存在。 5. Most of the moving and static contacts of the isolating switch designed in some solid cabinets are installed on an insulator, whether there is grounding isolation in the middle, leakage current passes through, and there is a problem of false fracture. After the switchgear has been used for several years, the insulation level of the switchgear has decreased year by year due to discharge, attached particles, etc., which eventually leads to equipment insulation failure. Therefore, GB1985-2003 "High Voltage Isolating Switches and Grounding Switches" clearly stipulates that there should be no dangerous leakage current between the isolation fractures.

6、有些固体绝缘柜采用二工位隔离开关,也有些产品采用三工位隔离开关,或配置独立的接地开关。采用三工位隔离开关可以很好的解决全绝缘设备的接地问题,但将导致动触头行程过长,设备高度或深度增加。 6. Some solid insulated cabinets use two-position isolating switches, and some products use three-position isolating switches, or are equipped with independent grounding switches. The use of a three-position isolating switch can solve the grounding problem of fully insulated equipment, but it will lead to too long travel of the moving contact and increase the height or depth of the equipment.

发明内容 Contents of the invention

针对上述问题,本发明旨在提供一种安全稳定的12kV载流1250A固体绝缘开关柜。 In view of the above problems, the present invention aims to provide a safe and stable 12kV current-carrying 1250A solid insulated switchgear.

为实现该技术目的,本发明的方案是:一种12kV载流1250A固 体绝缘开关柜,包括箱体、面板、闭锁机构、弹簧储能操作机构、母线座、出线绝缘座、绝缘方筒,所述箱体中部设置由上绝缘基座和下绝缘基座组成的绝缘方筒,所述上绝缘基座和下绝缘基座之间增大绝缘爬距的迷宫式结构内设置有聚四氟乙烯绝缘板,所述上绝缘基座和下绝缘基座内分别设置有真空开关、隔离开关、接地开关、母线座、出线绝缘座,所述绝缘方筒外设置有弹簧储能操作机构,所述弹簧储能操作机构与闭锁机构之间驱动连接,所述闭锁机构分别与真空开关、隔离开关、接地开关驱动连接; In order to achieve this technical purpose, the solution of the present invention is: a 12kV current-carrying 1250A solid insulated switchgear, including a box body, a panel, a locking mechanism, a spring energy storage operating mechanism, a busbar seat, an outgoing line insulating seat, and an insulating square cylinder. An insulating square tube consisting of an upper insulating base and a lower insulating base is set in the middle of the box, and polytetrafluoroethylene is arranged in a labyrinth structure between the upper insulating base and the lower insulating base to increase the insulation creepage Insulating board, the upper insulating base and the lower insulating base are respectively provided with a vacuum switch, an isolating switch, a grounding switch, a busbar seat, and an outgoing line insulating seat, and a spring energy storage operating mechanism is arranged outside the insulating square cylinder. The spring energy storage operating mechanism is drivingly connected to the locking mechanism, and the locking mechanism is respectively drivingly connected to the vacuum switch, the isolation switch and the grounding switch;

所述真空开关、隔离开关、接地开关分别与导电杆电连接,所述箱体内上部设置有母线座,所述箱体内底部设置有出线绝缘座,所述箱体正面设有方便观察的透明观察窗; The vacuum switch, isolating switch, and grounding switch are respectively electrically connected to the conductive rod. The upper part of the box is provided with a busbar seat, the bottom of the box is provided with an outlet insulating seat, and the front of the box is provided with a transparent observation panel for easy observation. window;

所述隔离开关包括有隔离静触头、隔离动触头、绝缘套筒、隔离连接端,所述隔离静触头与绝缘方筒固定,隔离静触头上设置有弹簧触指,隔离动触头通过水平运动插入式连接隔离静触头,所述隔离静触头的尾端套有用于加大爬电距离的绝缘套筒,所述隔离动触头尾端与隔离连接端固定连接,所述闭锁机构与隔离连接端驱动连接,所述隔离静触头与导电杆电连接,所述绝缘套筒为伞裙式结构; The isolating switch includes isolating static contacts, isolating moving contacts, insulating sleeves, and isolating connecting ends. The isolating static contacts are fixed to the insulating square cylinder. The head is inserted into the isolated static contact through horizontal movement, and the tail end of the isolated static contact is covered with an insulating sleeve for increasing the creepage distance. The tail end of the isolated movable contact is fixedly connected to the isolated connection end. The locking mechanism is driven and connected to the isolation connection end, the isolation static contact is electrically connected to the conductive rod, and the insulating sleeve is an umbrella skirt structure;

所述接地开关包括有接地静触头、接地动触头、接地连接端,所述接地静触头设置在接地动触头前端,所述接地动触头尾端与隔离连接端固定连接,所述闭锁机构与接地连接端驱动连接; The grounding switch includes a grounding static contact, a grounding movable contact, and a grounding connection end. The grounding static contact is arranged at the front end of the grounding movable contact, and the tail end of the grounding movable contact is fixedly connected to the isolation connection end. The above-mentioned locking mechanism is driven and connected to the ground connection end;

所述真空开关包括空气隔室、真空灭弧室、断路器绝缘拉杆,所述空气隔室设置在真空灭弧室与隔离开关之间,所述真空灭弧室水平 设置在母线座的安全距离下方,真空灭弧室尾端连接有断路器绝缘拉杆。 The vacuum switch includes an air compartment, a vacuum interrupter, and a circuit breaker insulation pull rod. The air compartment is arranged between the vacuum interrupter and the isolation switch, and the vacuum interrupter is horizontally arranged at a safe distance from the bus base. Below, the end of the vacuum interrupter is connected to the insulating pull rod of the circuit breaker.

作为优选,所述隔离动触头、隔离静触头均为柱形结构,两组隔离动触头组合呈U型结构,两组隔离动触头前端分别各连接有一组隔离静触头,两组隔离静触头之间平行设置。 As a preference, the isolated movable contact and the isolated static contact are both cylindrical structures, the two sets of isolated movable contacts are combined in a U-shaped structure, and the front ends of the two isolated movable contacts are respectively connected to a set of isolated static contacts. Set in parallel between group isolated static contacts.

作为优选,所述母线座和接地静触头上分别设置有弹簧触指。 Preferably, spring contact fingers are respectively arranged on the bus bar seat and the static grounding contact.

作为优选,所述出线绝缘座包括绝缘屏蔽层、应力套、绝缘封盖、固定螺母、带电显示密封窗,所述导电杆一端嵌套固定在绝缘屏蔽层内,所述绝缘屏蔽层下端设置有应力套,出线电缆穿过应力套与导电杆电连接,所述导电杆尾端连接有两组出线电缆,所述出线电缆通过固定螺母与导电杆固定连接,所述固定螺母外还套有绝缘封盖,所述导电杆尾端还连接有用于显示导电杆带电情况的带电显示密封窗。 As a preference, the outlet insulating seat includes an insulating shielding layer, a stress sleeve, an insulating cover, a fixing nut, and a sealing window for a live display, one end of the conductive rod is nested and fixed in the insulating shielding layer, and the lower end of the insulating shielding layer is provided with Stress sleeve, the outgoing cable passes through the stress sleeve and is electrically connected to the conductive rod. Two sets of outgoing cables are connected to the tail end of the conductive rod. The outgoing cable is fixedly connected to the conductive rod through a fixing nut, and an insulating Covering, the tail end of the conductive rod is also connected with a live display sealing window for displaying the charging condition of the conductive rod.

作为优选,所述绝缘方筒外部均喷涂有电阻率为108-1012Ω半导电层。 Preferably, the outside of the insulating square cylinder is spray-coated with a semiconductive layer with a resistivity of 10 8 -10 12 Ω.

作为优选,所述导电杆、隔离动触头和接地动触头均为没有尖角的柔性过渡结构。 Preferably, the conducting rod, the isolating movable contact and the grounding movable contact are all flexible transition structures without sharp corners.

作为优选,所述绝缘方筒的上绝缘基座和下绝缘基座合部设置有用于隔绝潮湿气体的O型密封圈。 Preferably, the upper insulating base and the lower insulating base joint of the insulating square cylinder are provided with an O-ring for isolating moist gas.

作为优选,所述箱体内还设置有智能控制器和传感器,所述传感器与智能控制器电连接。 Preferably, an intelligent controller and a sensor are further arranged in the box, and the sensor is electrically connected to the intelligent controller.

本发明的有益效果,本发明专利本申请的导电杆与出现电缆之间采用贯通集束母线的出线绝缘座结构进行连接,无论在进出线系统的 前后端接线,都能够保障足够的导电截面,采用该结构的出线绝缘座后,将进出线电缆接头额定电流由630A等级提高到1250A,同时降低了设备发热,提高设备的运行寿命; The beneficial effect of the present invention is that the conductive rod of the present invention patent application and the outgoing cable are connected by an outgoing line insulating seat structure that runs through the cluster busbar, so that sufficient conductive cross-section can be guaranteed no matter the wiring at the front and rear ends of the incoming and outgoing line system. After the outlet insulation seat of this structure, the rated current of the inlet and outlet cable joints is increased from 630A to 1250A, and at the same time, the heat generation of the equipment is reduced, and the operating life of the equipment is improved;

内部导电件上全部采用柔性过渡,没有明显尖角,克服了由于电场集中引起的尖端放电现象,使局部放电明显减小,绝缘方筒内部普遍采用加大爬距伞裙结构,降低局部放电电量,整体电场均匀;箱体外附涂导电或半导电屏蔽层接地后,局部放电符合行业标准要求; All the internal conductive parts adopt flexible transition without obvious sharp corners, which overcomes the sharp discharge phenomenon caused by the concentration of electric field, so that the partial discharge is significantly reduced. , the overall electric field is uniform; after the enclosure is grounded with a conductive or semi-conductive shielding layer, the partial discharge meets the requirements of the industry standard;

真空灭弧室采用偏离母线座安全距离的水平布置结构,避免母线磁场干扰,真空灭弧室燃弧期间触头间隙产生的纵向磁场,可使电弧均匀分布在触头表面,维持低的电弧电压,从而使真空灭弧室具有较高弧后介质强度恢复速度,小的电弧能量和小的腐蚀速率,提高了真空灭弧室开断电流的能力和使用寿命,同时采用表带触指技术,增大导电截面,触点均匀分布减少整体回路电阻,避免大电流电接触中的不均匀传导问题,解决导体受热变形引起的压接不实、少点接触问题以及由此进一步引起的发热恶性变形问题,在导电截面相同的情况下,载流能力明显提高; The vacuum interrupter adopts a horizontal layout structure that deviates from the safe distance of the busbar seat to avoid the interference of the busbar magnetic field. The longitudinal magnetic field generated by the contact gap during the arcing of the vacuum interrupter can make the arc evenly distributed on the contact surface and maintain a low arc voltage. , so that the vacuum interrupter has a high post-arc dielectric strength recovery speed, small arc energy and small corrosion rate, which improves the ability and service life of the vacuum interrupter to break the current. Increase the conductive cross-section, evenly distribute the contacts, reduce the overall circuit resistance, avoid the problem of uneven conduction in the high-current electrical contact, and solve the problem of crimping and less contact caused by thermal deformation of the conductor and the further heating and vicious deformation caused by it. Problem, in the case of the same conductive cross-section, the current-carrying capacity is significantly improved;

隔离开关采用了双断口、双圆柱型隔离动触头水平运动插入隔离静触头弹簧触指柔性连接结构。上下的隔离动触头之间有安全的空气绝缘间隙,不存在假断口泄漏电流通过问题,动触头运动行程减少一半;符合GB1985-2003《高压隔离开关和接地开关》中明确规定:“隔离断口间不应该有危险的漏电流存在。”的要求。 The isolating switch adopts a double-fracture, double-cylindrical isolating movable contact horizontally moving to insert the isolating static contact spring finger flexible connection structure. There is a safe air insulation gap between the upper and lower isolated moving contacts, there is no problem of false fracture leakage current passing through, and the moving stroke of the moving contact is reduced by half; in line with the clear provisions in GB1985-2003 "High Voltage Isolating Switches and Grounding Switches": "Isolation There should be no dangerous leakage current between the fractures." Requirements.

附图说明 Description of drawings

图1为本发明的结构示意图; Fig. 1 is a structural representation of the present invention;

图2为本发明正视面的结构示意图; Fig. 2 is the structural representation of front view of the present invention;

图3为本发明的出线绝缘座的结构示意图; Fig. 3 is a schematic structural view of an outlet insulating seat of the present invention;

图4为本发明的隔离开关的局部结构示意图; Fig. 4 is the partial structure schematic diagram of the isolating switch of the present invention;

图5为本发明俯视面的结构示意图; Fig. 5 is a structural schematic diagram of the top view of the present invention;

图6为本发明的母线座部分弹簧触指的结构示意图; Fig. 6 is a structural schematic diagram of the spring contact fingers of the bus seat part of the present invention;

图7为本发明的上绝缘基座和下绝缘基座组合的结构示意图。 Fig. 7 is a schematic structural diagram of the combination of the upper insulating base and the lower insulating base of the present invention.

具体实施方式 detailed description

下面结合附图和具体实施例对本发明做进一步详细说明。 The present invention will be described in further detail below in conjunction with the accompanying drawings and specific embodiments.

如图1-7所示,本发明所述的具体实施例为一种12kV载流1250A固体绝缘开关柜,包括箱体1、面板13、闭锁机构3、弹簧储能操作机构2、母线座9、出线绝缘座7,所述箱体1中部设置有上绝缘基座12和下绝缘基座11组成的绝缘方筒,所述上绝缘基座12和下绝缘基座11之间的增大绝缘爬距的迷宫式凹槽内设置有聚四氟乙烯绝缘板14,所述上绝缘基座12和下绝缘基座11内分别设置有真空开关4、隔离开关5、接地开关6、母线座9、出线绝缘座7,所述绝缘方筒外设置有弹簧储能操作机构2,所述弹簧储能操作机构2与闭锁机构3之间驱动连接,所述闭锁机构3分别与真空开关4、隔离开关5、接地开关6驱动连接。本申请的所有带电部位都被封闭在绝缘的箱体内,人无法触及,保障了操作者的安全;如图7所示,上绝缘基座和下绝缘基座之间迷宫式凹槽内装聚四氟乙烯绝缘板可以增加绝缘爬距。如图5所示,所述箱体1内包含有A、B、C三相组合电器绝 缘方筒,每一相绝缘方筒均由上绝缘基座和下绝缘基座组合而成;其中A、B、C相母线座与A、B、C相上绝缘基座为固体绝缘整体,并按相序左、中、右,后、中、前排列。 As shown in Figures 1-7, the specific embodiment of the present invention is a 12kV current-carrying 1250A solid insulated switchgear, including a box body 1, a panel 13, a locking mechanism 3, a spring energy storage operating mechanism 2, and a bus bar seat 9 1. Outlet insulating seat 7, the middle part of the box body 1 is provided with an insulating square cylinder composed of an upper insulating base 12 and a lower insulating base 11, and the increased insulation between the upper insulating base 12 and the lower insulating base 11 A polytetrafluoroethylene insulating board 14 is provided in the labyrinth groove of the creepage distance, and a vacuum switch 4, a disconnector 5, a grounding switch 6, and a bus bar seat 9 are respectively provided in the upper insulating base 12 and the lower insulating base 11. 1. Outlet insulating seat 7, a spring energy storage operating mechanism 2 is arranged outside the insulating square cylinder, the spring energy storage operating mechanism 2 is driven and connected with the locking mechanism 3, and the locking mechanism 3 is isolated from the vacuum switch 4 and the The switch 5 and the grounding switch 6 are driven and connected. All the live parts of this application are enclosed in an insulating box, which cannot be touched by people, which ensures the safety of the operator; as shown in Figure 7, the labyrinth groove between the upper and lower insulating Vinyl fluoride insulation board can increase insulation creepage distance. As shown in Figure 5, the box body 1 contains a three-phase combined electrical insulation square cylinder of A, B, and C, and each phase insulation square cylinder is composed of an upper insulating base and a lower insulating base; where A , B, C phase bus base and A, B, C phase upper insulation base are solid insulation whole, and are arranged according to the phase sequence left, middle, right, rear, middle and front.

所述真空开关4、隔离开关5、接地开关6分别与导电杆8电连接,所述箱体1内上部设置有母线座9,所述箱体1内底部设置有出线绝缘座7,所述箱体1正面设置有方便观察的透明观察窗。通过绝缘的箱体面向面板方向设置的透明观察窗,操作者可以看到隔离开关接地开关的分合闸位置。 The vacuum switch 4, the isolating switch 5, and the grounding switch 6 are electrically connected to the conductive rod 8 respectively, the upper part of the box body 1 is provided with a bus bar seat 9, and the inner bottom of the box body 1 is provided with an outgoing line insulating seat 7. The front of the box body 1 is provided with a transparent observation window for easy observation. Through the transparent observation window set in the direction of the insulating box facing the panel, the operator can see the opening and closing position of the grounding switch of the isolating switch.

所述隔离开关5包括有隔离静触头51、隔离动触头52、绝缘套筒53、隔离连接端54,所述隔离静触头51与绝缘方筒固定,隔离静触头顶部设置有弹簧触指,隔离动触头52通过水平运动插入式连接隔离静触头51,所述隔离静触头51的尾端套有用于加大爬电距离的绝缘套筒53,所述隔离动触头52尾端与隔离连接端54固定连接,所述闭锁机构3与隔离连接端54驱动连接,所述隔离静触头51与导电杆8电连接,所述绝缘套筒53为伞裙式结构。绝缘套筒的内外都采用伞裙式的路径形成了较大的爬电距离。 The isolating switch 5 includes an isolating static contact 51, an isolating movable contact 52, an insulating sleeve 53, and an isolating connection end 54. The isolating static contact 51 is fixed to the insulating square cylinder, and the top of the isolating static contact is provided with a spring The contact finger, the isolated movable contact 52 is inserted into the isolated static contact 51 through horizontal movement, and the tail end of the isolated static contact 51 is covered with an insulating sleeve 53 for increasing the creepage distance. The isolated movable contact The tail end of 52 is fixedly connected to the isolation connection end 54, the locking mechanism 3 is drivingly connected to the isolation connection end 54, the isolation static contact 51 is electrically connected to the conductive rod 8, and the insulating sleeve 53 is an umbrella skirt structure. The inner and outer sides of the insulating sleeve adopt shed-like paths to form a large creepage distance.

所述接地开关6包括有接地静触头61、接地动触头62、接地连接端63,所述接地静触头61设置在接地动触头62前端,所述接地动触头62尾端与隔离连接端54固定连接,所述闭锁机构3与接地连接端63驱动连接; The grounding switch 6 includes a grounding static contact 61, a grounding movable contact 62, and a grounding connection end 63. The grounding static contact 61 is arranged at the front end of the grounding movable contact 62, and the tail end of the grounding movable contact 62 is connected to The isolation connection end 54 is fixedly connected, and the locking mechanism 3 is drivingly connected to the ground connection end 63;

如图1、4所示,所述真空开关4包括空气隔室41、真空灭弧室42、断路器绝缘拉杆43,所述空气隔室41设置在真空灭弧室42与 隔离开关5之间,所述真空灭弧室42水平设置在母线座9的安全距离下方,真空灭弧室42尾端连接有断路器绝缘拉杆43。所述空气隔离室内还设置有照明灯珠。真空灭弧室采用偏离母线座安全距离的水平布置结构,避免母线磁场干扰。真空灭弧室在燃弧期间触头间隙产生的纵向磁场,可使电弧均匀分布在触头表面,维持低的电弧电压,从而使真空灭弧室具有较高弧后介质强度恢复速度,小的电弧能量和小的腐蚀速率。本设计提高了真空灭弧室开断电流的能力和使用寿命。 As shown in Figures 1 and 4, the vacuum switch 4 includes an air compartment 41, a vacuum interrupter 42, and a circuit breaker insulating rod 43, and the air compartment 41 is arranged between the vacuum interrupter 42 and the isolating switch 5 , the vacuum interrupter 42 is horizontally arranged below the safety distance of the bus base 9 , and the tail end of the vacuum interrupter 42 is connected with a circuit breaker insulation pull rod 43 . Lighting lamp beads are also arranged in the air isolation chamber. The vacuum interrupter adopts a horizontal layout structure away from the safe distance of the bus base to avoid bus magnetic field interference. The longitudinal magnetic field generated by the gap between the contacts of the vacuum interrupter during arcing can make the arc evenly distributed on the contact surface and maintain a low arc voltage, so that the vacuum interrupter has a higher post-arc dielectric strength recovery speed and a small Arc energy and small corrosion rate. This design improves the current breaking capability and service life of the vacuum interrupter.

为了提高安全性能减少运动形行程,所述隔离动触头52、隔离静触头51均为柱形结构,两组隔离动触头52组合呈U型结构,两组隔离动触头52前端分别各连接有一组隔离静触头51,两组隔离静触头51之间平行设置。双断口、双圆柱型动触头水平运动插入隔离静触头弹簧触指柔性连接结构,上下隔离动触头之间有安全的空气绝缘间隙,不存在假断口泄漏电流通过问题,同时隔离动触头运动行程减少一半,同时保证了足够的空气绝缘间隙,符合GB1985-2003《高压隔离开关和接地开关》中明确规定:“隔离断口间不应该有危险的漏电流存在。”的要求。 In order to improve the safety performance and reduce the motion-shaped stroke, the isolated movable contact 52 and the isolated static contact 51 are all cylindrical structures, and the two sets of isolated movable contacts 52 are combined in a U-shaped structure, and the front ends of the two isolated movable contacts 52 are respectively Each connection has a set of isolated static contacts 51, and the two sets of isolated static contacts 51 are arranged in parallel. Double-fracture, double-cylindrical moving contacts horizontally inserted into the isolation static contact spring contact finger flexible connection structure, there is a safe air insulation gap between the upper and lower isolation moving contacts, there is no problem of leakage current through false fractures, and the moving contacts are isolated at the same time The movement stroke of the head is reduced by half, and at the same time, sufficient air insulation gap is ensured, which meets the requirements of GB1985-2003 "High Voltage Isolating Switch and Grounding Switch": "There should be no dangerous leakage current between the isolation fractures."

为了提高连接的稳定性,所述母线座9和接地静触头61上分别设置有弹簧触指10。隔离静触头51顶部设置有弹簧触指10。通过弹簧触指,可以使得隔离静触头和接地静触头与导电杆之间连接更加稳定。通过弹簧触指可以实现表带触指功能,大幅增加导电截面,同时触点均匀分布,减少导体长度,减少整体回路电阻,避免大电流电接 触中的不均匀传导问题,解决导体受热变形引起的压接不实以及由此进一步引起的发热恶性变形问题。如图6所示,母线座也采用弹簧触指结构,能够大幅增加导电截面,同时触点均匀分布,减少导体长度,减少整体回路电阻,避免大电流电接触中的不均匀传导。 In order to improve the stability of the connection, spring contact fingers 10 are respectively provided on the bus bar seat 9 and the static ground contact 61 . A spring contact finger 10 is provided on the top of the isolated static contact 51 . Through the spring contact fingers, the connection between the isolating static contact and the grounding static contact and the conductive rod can be made more stable. The strap contact function can be realized through the spring contact finger, which greatly increases the conductive cross section, and at the same time, the contacts are evenly distributed, reducing the length of the conductor, reducing the overall circuit resistance, avoiding the problem of uneven conduction in high-current electrical contact, and solving the thermal deformation of the conductor. Improper crimping and further heating and malignant deformation caused by it. As shown in Figure 6, the bus bar seat also adopts a spring contact finger structure, which can greatly increase the conductive cross-section, and at the same time, the contacts are evenly distributed, reducing the length of the conductor, reducing the overall circuit resistance, and avoiding uneven conduction in high-current electrical contacts.

如图3所示,为了保证导电杆与出现电缆稳定连接,所述出线绝缘座7包括绝缘屏蔽层71、应力套72、绝缘封盖74、固定螺母73、带电显示密封窗75,所述导电杆8一端嵌套固定在绝缘屏蔽层71内,所述绝缘屏蔽层71下端设置有应力套72,所述导电杆8尾端连接有两组出线电缆75,所述出线电缆75穿过应力套72与导电杆8电连接,所述出线电缆75通过固定螺母73与导电杆8固定连接,所述固定螺母73外还套有绝缘封盖74,所述导电杆8尾端还连接有用于显示导电杆带电情况的带电显示密封窗76。本申请的导电杆与出现电缆之间采用贯通集束母线的出线绝缘座结构进行连接,无论在进出线系统的前后端接线,都能够保障足够的导电截面,采用该结构的出线绝缘座后,将进出线电缆接头额定电流由630A等级提高到1250A。 As shown in Figure 3, in order to ensure the stable connection between the conductive rod and the cable, the outlet insulating seat 7 includes an insulating shielding layer 71, a stress sleeve 72, an insulating cover 74, a fixing nut 73, and a live display sealing window 75. One end of the rod 8 is nested and fixed in the insulating shielding layer 71, the lower end of the insulating shielding layer 71 is provided with a stress sleeve 72, and the tail end of the conductive rod 8 is connected with two sets of outgoing cables 75, and the outgoing cables 75 pass through the stress sleeve 72 is electrically connected with the conductive rod 8, and the outgoing cable 75 is fixedly connected with the conductive rod 8 through the fixing nut 73. The fixing nut 73 is also covered with an insulating cover 74, and the tail end of the conductive rod 8 is also connected with a The charged display seal window 76 of the conductive rod charged situation. The conductive pole of the present application is connected with the outgoing cable by an outgoing line insulating seat structure that runs through the cluster busbar. Regardless of the wiring at the front and rear ends of the incoming and outgoing line system, sufficient conductive cross-sections can be guaranteed. After using the outgoing line insulating seat of this structure, the The rated current of the inlet and outlet cable joints is increased from 630A to 1250A.

为了保证绝缘方筒接地,提高安全性能,所述绝缘方筒(即上绝缘基座12和下绝缘基座11)外部均喷涂有电阻率为108-1012Ω半导电层。绝缘方筒外露面喷涂的半导电层可现实接地功能,有效清除静电感应,屏蔽内部电场,达到减低局部放电的作用,使得局部放电符合行业标准要求。 In order to ensure the grounding of the insulating square cylinder and improve safety performance, the outside of the insulating square cylinder (ie, the upper insulating base 12 and the lower insulating base 11 ) is sprayed with a semiconductive layer with a resistivity of 10 8 -10 12 Ω. The semi-conductive layer sprayed on the exposed surface of the insulating square tube can realize the grounding function, effectively eliminate the electrostatic induction, shield the internal electric field, and reduce the effect of partial discharge, so that the partial discharge meets the requirements of the industry standard.

为了减少尖端放电现象,所述导电杆8、隔离动触头52和接地动触头62均为没有尖角的柔性过度结构。本申请在导电杆、隔离动 触头和接地动触头等内部导电件上全部采用柔性过渡,没有明显尖角,克服了由于电场集中引起的尖端放电现象,使局部放电明显减小。 In order to reduce the tip discharge phenomenon, the conductive rod 8, the isolating movable contact 52 and the grounding movable contact 62 are all flexible transitional structures without sharp corners. This application uses flexible transitions on all internal conductive parts such as conductive rods, isolation movable contacts and grounding movable contacts, without obvious sharp corners, which overcomes the phenomenon of sharp discharge caused by electric field concentration, and significantly reduces partial discharge.

为了增加箱体的密闭性,所述绝缘方筒的上绝缘基座12和下绝缘基座11组合部设置有用于隔绝潮湿气体的O型密封圈。解决高海拔条件下的固体绝缘开关柜凝露影响绝缘问题,较好解决了绝缘方筒受生产工艺和材料、镶件的制约成品率低的问题。 In order to increase the airtightness of the box, the combination of the upper insulating base 12 and the lower insulating base 11 of the insulating square cylinder is provided with an O-ring for isolating moist gas. Solve the problem of condensation affecting the insulation of solid insulated switchgear under high altitude conditions, and better solve the problem of low yield of insulating square tubes due to the constraints of production technology, materials, and inserts.

为了方便不同客户需求,所述箱体1内还设置有智能控制器和传感器,所述传感器与智能控制器电连接。用户可根据不同的需求,通过选配FTU等多种智能控制器及其他相关的传感器设备,实现不同程度的控制、测量和保护功能。 In order to facilitate the needs of different customers, an intelligent controller and a sensor are also arranged in the box 1, and the sensor is electrically connected to the intelligent controller. According to different needs, users can choose a variety of intelligent controllers such as FTU and other related sensor equipment to achieve different levels of control, measurement and protection functions.

本发明专利本申请的导电杆与出现电缆之间采用贯通集束母线的出线绝缘座结构进行连接,无论在进出线系统的前后端接线,都能够保障足够的导电截面,采用该结构的出线绝缘座后,将进出线电缆接头额定电流由630A等级提高到1250A,同时降低了设备发热,提高设备的运行寿命; In the present invention patent, the conductive rod of this application and the outgoing cable are connected by the outgoing line insulating seat structure that runs through the cluster busbar. Regardless of the wiring at the front and rear ends of the incoming and outgoing line system, sufficient conductive cross-section can be guaranteed. The outgoing line insulating seat with this structure Finally, the rated current of the inlet and outlet cable joints is increased from 630A to 1250A, and at the same time, the heat generation of the equipment is reduced, and the operating life of the equipment is improved;

内部导电件上全部采用柔性过渡,没有明显尖角,克服了由于电场集中引起的尖端放电现象,使局部放电明显减小,箱体内部普遍采用加大爬距伞裙结构,降低局部放电电量,整体电场均匀;箱体外附涂导电或半导电屏蔽层接地后,局部放电符合行业标准要求; All the internal conductive parts adopt flexible transition without obvious sharp corners, which overcomes the sharp discharge phenomenon caused by the concentration of the electric field, so that the partial discharge is significantly reduced. The overall electric field is uniform; after the enclosure is grounded with a conductive or semi-conductive shielding layer, the partial discharge meets the requirements of the industry standard;

真空灭弧室采用偏离母线座安全距离的水平布置结构,避免母线磁场干扰,真空灭弧室燃弧期间触头间隙产生的纵向磁场,可使电弧均匀分布在触头表面,维持低的电弧电压,从而使真空灭弧室具有较 高弧后介质强度恢复速度,小的电弧能量和小的腐蚀速率,提高了真空灭弧室开断电流的能力和使用寿命,同时采用表带触指技术,增大导电截面,触点均匀分布减少整体回路电阻,避免大电流电接触中的不均匀传导问题,解决导体受热变形引起的压接不实、少点接触以及由此进一步引起的发热恶性变形问题,在导电截面相同的情况下,载流能力明显提高; The vacuum interrupter adopts a horizontal layout structure that deviates from the safe distance of the busbar seat to avoid the interference of the busbar magnetic field. The longitudinal magnetic field generated by the contact gap during the arcing of the vacuum interrupter can make the arc evenly distributed on the contact surface and maintain a low arc voltage. , so that the vacuum interrupter has a high post-arc dielectric strength recovery speed, small arc energy and small corrosion rate, which improves the ability and service life of the vacuum interrupter to break the current. Increase the conductive cross-section, evenly distribute the contacts, reduce the overall circuit resistance, avoid the problem of uneven conduction in high-current electrical contacts, and solve the problem of unreal crimping, less point contact and further heating and vicious deformation caused by thermal deformation of conductors , in the case of the same conductive cross-section, the current-carrying capacity is significantly improved;

隔离开关采用了双断口、双圆柱型隔离动触头水平运动插入隔离静触头弹簧触指柔性连接结构。上下的隔离动触头之间有安全的空气绝缘间隙,不存在假断口泄漏电流通过问题,动触头运动行程减少一半;符合GB1985-2003《高压隔离开关和接地开关》中明确规定:“隔离断口间不应该有危险的漏电流存在。”的要求。 The isolating switch adopts a double-fracture, double-cylindrical isolating movable contact horizontally moving to insert the isolating static contact spring finger flexible connection structure. There is a safe air insulation gap between the upper and lower isolated moving contacts, there is no problem of false fracture leakage current passing through, and the moving stroke of the moving contact is reduced by half; in line with the clear provisions in GB1985-2003 "High Voltage Isolating Switches and Grounding Switches": "Isolation There should be no dangerous leakage current between the fractures." Requirements.

本发明更符合固体绝缘环网柜紧凑性的要求。12kV载流1250A固体绝缘开关柜意味一台可以当两台630A柜使用,为用户带来福音,满足国家建设更加宽泛的用电领域。加速淘汰SF6气体绝缘环网柜,促进低碳生态经济发展。将传统固体绝缘柜真空灭弧室固封脊柱绝缘结构改变为围栏绝缘结构。加大伞裙式绝缘结构及圆柱形贯通集束母线电缆进出导线装置。使之成为一台真正意义上的适宜高原环境工况的大电流固体绝缘柜。 The invention is more in line with the requirement of the compactness of the solid insulation ring main unit. The 12kV current-carrying 1250A solid insulated switchgear means that one switchgear can be used as two 630A switchgears, bringing good news to users and meeting the wider power consumption fields of national construction. Accelerate the elimination of SF 6 gas-insulated ring network cabinets and promote the development of low-carbon ecological economy. The solid-sealed spine insulation structure of the vacuum interrupter of the traditional solid insulation cabinet is changed into a fence insulation structure. Enlarged shed skirt insulation structure and cylindrical through cluster bus cable entry and exit conductor device. Make it a real high-current solid insulation cabinet suitable for plateau environmental working conditions.

以上所述,仅为本发明的较佳实施例,并不用以限制本发明,凡是依据本发明的技术实质对以上实施例所作的任何细微修改、等同替换和改进,均应包含在本发明技术方案的保护范围之内。 The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention. Any minor modifications, equivalent replacements and improvements made to the above embodiments according to the technical essence of the present invention shall be included in the technical aspects of the present invention. within the scope of protection of the program.

Claims (8)

1. a 12kV current-carrying 1250A solid insulation switch cabinet, it is characterised in that: include case Body, panel, blocking mechanism, spring energy-storage operating mechanism, bus base, outlet insulating base, absolutely Edge square tube, arranges the insulating square being made up of upper insulating base and lower insulating base in the middle part of described casing Cylinder, increases between described upper insulating base and lower insulating base in the maze-type structure of insulation creep distance It is respectively provided with in being provided with teflon insulation plate, described upper insulating base and lower insulating base There are vacuum switch, disconnecting switch, earthed switch, bus base, outlet insulating base, described insulation Square tube is outside equipped with spring energy-storage operating mechanism, described spring energy-storage operating mechanism and blocking mechanism Between drive connection, described blocking mechanism respectively with vacuum switch, disconnecting switch, earthed switch Drive connection;
Described vacuum switch, disconnecting switch, earthed switch electrically connect with conducting rod respectively, described Casing internal upper part is provided with bus base, and described casing inner bottom part is provided with outlet insulating base, described Casing front is provided with the transparent windows of convenient observation;
Described disconnecting switch includes isolation static contact, isolation moving contact, insulating sleeve, isolation Connecting end, described isolation static contact is fixed with insulation square tube, and isolation static contact is provided with spring Fingertip, isolation moving contact connects isolation static contact by horizontal movement plug-in type, and described isolation is quiet The tail end of contact is cased with the insulating sleeve for strengthening creep age distance, described isolation moving contact tail end Be connected the fixing connection of end with isolation, described blocking mechanism is connected end drive connection with isolation, described Isolation static contact electrically connects with conducting rod, and described insulating sleeve is umbrella-skirt type structure;
Described earthed switch includes grounding static contact, ground connection moving contact, grounding connection end, institute Stating grounding static contact and be arranged on ground connection moving contact front end, described ground connection moving contact tail end is with isolation even Connect the fixing connection of end, described blocking mechanism and grounding connection end drive connection;
Described vacuum switch includes air compartment, vacuum interrupter, insulating pull rod for breaker, institute State air compartment to be arranged between vacuum interrupter and disconnecting switch, described vacuum interrupter level Being arranged on below the safe distance of bus base, vacuum interrupter tail end connects has chopper insulation to draw Bar.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its It is characterised by: described isolation moving contact, isolation static contact are column construction, and two groups of isolation are dynamic The U-shaped structure of contact combinations, to be respectively connected with one group of isolation quiet in two groups of isolation moving contact front ends Contact, be arranged in parallel between two groups of isolation static contacts.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its It is characterised by: on described bus base and grounding static contact, be respectively arranged with spring touch finger.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its It is characterised by: described outlet insulating base includes insulation screen, stress set, insulative cap, consolidates Determining nut, charged display hermetyic window, described conducting rod one end nesting is fixed in insulation screen, Described insulation screen lower end is provided with stress set, and outlet cable is through stress set and conducting rod electricity Connecting, described conducting rod tail end connects two groups of outlet cable, and described outlet cable is by fixing Nut is fixing with conducting rod to be connected, and is also cased with insulative cap, described conduction outside described fixing nut Bar tail end is also associated with the charged display hermetyic window for showing the charged situation of conducting rod.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its It is characterised by: being all coated with resistivity outside described insulation square tube is 108-1012Ω semi-conductive layer.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its Be characterised by: described conducting rod, isolation moving contact and ground connection moving contact be do not have angular soft Property transition structure.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its Be characterised by: the upper insulating base of described insulation square tube and lower insulating base conjunction portion be provided with for The O RunddichtringO of isolation wet gas.
12kV current-carrying 1250A solid insulation switch cabinet the most according to claim 1, its Be characterised by: in described casing, be additionally provided with intelligent controller and sensor, described sensor with Intelligent controller electrically connects.
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CN119171319A (en) * 2024-11-21 2024-12-20 赫兹曼电力(广东)有限公司 A 24KV switch cabinet

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